Estimation of Carbonate Elastic Properties Using Nanoindentation and Digital Images

Petrophysical properties of carbonate reservoirs are less predictable than the properties of silisiclastic reservoirs. The main reason for that is chemical interaction of carbonate rocks with percolating fluids, ion exchange and recrystallization in geological time. Quantification of the elastic var...

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Main Authors: De Paula, Osni, Pervukhina, M., Gurevich, Boris, Lebedev, Maxim, Martyniuk, M., Piane, C.
Other Authors: EAGE
Format: Conference Paper
Published: EAGE 2010
Online Access:http://hdl.handle.net/20.500.11937/20150
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author De Paula, Osni
Pervukhina, M.
Gurevich, Boris
Lebedev, Maxim
Martyniuk, M.
Piane, C.
author2 EAGE
author_facet EAGE
De Paula, Osni
Pervukhina, M.
Gurevich, Boris
Lebedev, Maxim
Martyniuk, M.
Piane, C.
author_sort De Paula, Osni
building Curtin Institutional Repository
collection Online Access
description Petrophysical properties of carbonate reservoirs are less predictable than the properties of silisiclastic reservoirs. The main reason for that is chemical interaction of carbonate rocks with percolating fluids, ion exchange and recrystallization in geological time. Quantification of the elastic variability of carbonate grains on the microscale is the first step to constrain models and to obtain more realistic predictions of practically important rock properties of carbonate reservoirs. In this study we present elastic moduli of an oolite sample from the Pleistocene Dampier Formation of Southern Carnarvon Basin, Western Australia obtained by the nanoindentation technique.Young moduli of this highly heterogeneous sample are measured at 49 points regularly distributed in a 70x70micrometer rectangular grid on the surface. The frequency diagram shows bimodal distribution of the Young moduli that correspond to dense calcite phase and rare (dissolved) calcite phase. These two solid phases are apparent in the high resolution scanning electron microscope images. We used the obtained moduli of the dense and rare phases for numerical modelling of elastic properties of the carbonate sample from micro-CT images. The results of the numerical modelling using finite element code are compared with the elastic moduli obtained from acoustic velocities measured by ultrasonic technique.
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format Conference Paper
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institution Curtin University Malaysia
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last_indexed 2025-11-14T07:33:29Z
publishDate 2010
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spelling curtin-20.500.11937-201502017-01-30T12:17:43Z Estimation of Carbonate Elastic Properties Using Nanoindentation and Digital Images De Paula, Osni Pervukhina, M. Gurevich, Boris Lebedev, Maxim Martyniuk, M. Piane, C. EAGE Petrophysical properties of carbonate reservoirs are less predictable than the properties of silisiclastic reservoirs. The main reason for that is chemical interaction of carbonate rocks with percolating fluids, ion exchange and recrystallization in geological time. Quantification of the elastic variability of carbonate grains on the microscale is the first step to constrain models and to obtain more realistic predictions of practically important rock properties of carbonate reservoirs. In this study we present elastic moduli of an oolite sample from the Pleistocene Dampier Formation of Southern Carnarvon Basin, Western Australia obtained by the nanoindentation technique.Young moduli of this highly heterogeneous sample are measured at 49 points regularly distributed in a 70x70micrometer rectangular grid on the surface. The frequency diagram shows bimodal distribution of the Young moduli that correspond to dense calcite phase and rare (dissolved) calcite phase. These two solid phases are apparent in the high resolution scanning electron microscope images. We used the obtained moduli of the dense and rare phases for numerical modelling of elastic properties of the carbonate sample from micro-CT images. The results of the numerical modelling using finite element code are compared with the elastic moduli obtained from acoustic velocities measured by ultrasonic technique. 2010 Conference Paper http://hdl.handle.net/20.500.11937/20150 EAGE fulltext
spellingShingle De Paula, Osni
Pervukhina, M.
Gurevich, Boris
Lebedev, Maxim
Martyniuk, M.
Piane, C.
Estimation of Carbonate Elastic Properties Using Nanoindentation and Digital Images
title Estimation of Carbonate Elastic Properties Using Nanoindentation and Digital Images
title_full Estimation of Carbonate Elastic Properties Using Nanoindentation and Digital Images
title_fullStr Estimation of Carbonate Elastic Properties Using Nanoindentation and Digital Images
title_full_unstemmed Estimation of Carbonate Elastic Properties Using Nanoindentation and Digital Images
title_short Estimation of Carbonate Elastic Properties Using Nanoindentation and Digital Images
title_sort estimation of carbonate elastic properties using nanoindentation and digital images
url http://hdl.handle.net/20.500.11937/20150